Park Kwideok, Mishra Sanjay, Lewis Gladius, Losby Joe, Fan Zaifeng, Park Joon B
Department of Biomedical Engineering, The University of Memphis, Memphis, TN 38152-3180, USA.
Biomaterials. 2004 May;25(12):2427-36. doi: 10.1016/j.biomaterials.2003.09.014.
In four separate studies, the effect of three methods used to highly crosslink ultra-high-molecular-weight polyethylene (UHMWPE) (gamma irradiation, electron beam irradiation, and peroxide treatment) on the polymer's stiffness was investigated using quasi-static and dynamic nanoindentation. From the quasi-static studies, it was found that (a) the highest value of the elastic modulus, E (2240 +/- 157 MPa) was obtained from specimens prepared from direct compression molded UHMWPE crosslinked using gamma irradiation, with a dosage of 7.5 Mrad; (b) the value of E for specimens formed from direct compression molded UHMWPE was higher (1950 +/- 255 MPa) compared to results obtained from specimens formed from ram extruded UHMWPE (1583 +/- 140 MPa); and (c) the magnitude of the decrease in the value of E as a result of subjecting a highly crosslinked UHMWPE specimen to uniaxial tensile forces depends on the method used for the crosslinking. From the dynamic study, (d) it was found that the extent of the change in both the storage modulus and the loss modulus, as a result of subjecting a highly crosslinked UHMWPE specimen to uniaxial tension forces, depends on the method used for the crosslinking.
在四项独立研究中,使用准静态和动态纳米压痕技术,研究了用于高度交联超高分子量聚乙烯(UHMWPE)的三种方法(γ射线辐照、电子束辐照和过氧化物处理)对聚合物刚度的影响。从准静态研究中发现:(a)弹性模量E的最高值(2240±157兆帕)是由使用剂量为7.5兆拉德的γ射线辐照交联的直接压缩模塑UHMWPE制备的试样获得的;(b)与由柱塞挤出UHMWPE制成的试样(1583±140兆帕)相比,由直接压缩模塑UHMWPE制成的试样的E值更高(1950±255兆帕);(c)高度交联的UHMWPE试样承受单轴拉力时E值下降的幅度取决于交联所使用的方法。从动态研究中发现:(d)高度交联的UHMWPE试样承受单轴拉力时,储能模量和损耗模量的变化程度取决于交联所使用的方法。